Rapid isolation of desired sequences from lone linker PCR amplified cDNA mixtures: Application to identification and recovery of expressed sequences in cloned genomic DNA
- 1 January 1992
- journal article
- Published by Springer Nature in Mammalian Genome
- Vol. 2 (4) , 252-259
- https://doi.org/10.1007/bf00355435
Abstract
A simple and efficient method for the rapid isolation of specific sequences from PCR-amplified cDNA mixtures has been developed. cDNA mixtures obtained using lone linker PCR (Ko et al. 1990) appeared to be highly representative even though the starting material, 100 ng-2 μg of total RNA, is much less than is required for making an ordinary cDNA library. With this method, cDNA mixtures were obtained from limited materials, including early mouse embryos and primordial germ cells. For selective enrichment of desired cDNAs, biotinylated probe was hybridized with the lone linker-linked cDNA in solution and the resulting probe-cDNA hybrid was captured by Streptavidin-coated magnetic beads. After appropriate washing, cDNA was released from the beads and subjected to amplification followed by cloning into a vector. Using genomic fragments isolated during chromosomal walking in the T/t complex of mouse Chromosome (Chr) 17, cDNAs encoding novel germ cell specific genes have been readily isolated by the above procedures. The method, termed random access retrieval of genetic information through PCR (RARGIP), will streamline the entire process from RNA to cDNA greatly. Its application potentials in various areas of molecular genetics will be discussed.Keywords
This publication has 32 references indexed in Scilit:
- Several testis‐expressed genes in the mouse t‐complex have expression differences between wild‐type and t‐mutant miceDevelopmental Genetics, 1991
- Cloning of PCR-amplified total cDNA: Construction of a mouse oocyte cDNA libraryGene Analysis Techniques, 1990
- Chromosome crawling in the MHCTrends in Genetics, 1989
- A novel cDNA/PCR strategy for efficient cloning of small amounts of undefined RNAGene, 1989
- Do multigene families regulate vertebrate development?Trends in Genetics, 1988
- CpG-rich islands and the function of DNA methylationNature, 1986
- An improved technique for the efficient construction of gene libraries by partial filling-in of cohesive endsGene, 1986
- MOUSE tau HAPLOTYPESAnnual Review of Genetics, 1985
- Isolation of biologically active ribonucleic acid from sources enriched in ribonucleaseBiochemistry, 1979
- The T-locus of the mouseCell, 1975